Effects of mulch films with different thicknesses on the microbial community of tobacco rhizosphere soil in Yunnan laterite.

IF 4 2区 生物学 Q2 MICROBIOLOGY Frontiers in Microbiology Pub Date : 2024-09-23 eCollection Date: 2024-01-01 DOI:10.3389/fmicb.2024.1458470
Shuaibing Wang, Qiuping Li, Changbing Ye, Wenqing Ma, Yandong Sun, Bin Zhao, Weiqing Zeng, Zhiqiang Yue, Lan Li, Dandan Li
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Abstract

The mulch film (MF) management model of the agricultural field affects the physical and chemical properties of soil (PCPS) and the structure of the microorganism community; however, studies on the relationship between the rhizosphere microorganism community structure and the thickness of MF are still limited. To understand the interactions among the MF thickness, PCPS, and rhizosphere microorganism, a study was conducted by using an integrated metagenomic strategy, where tobacco rhizosphere soil was treated with four commonly representative and used thicknesses of MFs (0.004, 0.006, 0.008, and 0.010 mm) in Yunnan laterite. The results showed that agronomic traits such as the tobacco plant height (TPH), leaf number (LN), fresh leaf weight (FLW), and dry leaf weight (DLW) were significantly (p < 0.01) improved in the field mulched with the thickest film (0.010 mm) compared with the exposed field (CK), and there was a 6.81 and 5.54% increase in the FLW and TPH, separately. The correlation analyses revealed a significant positive correlation of the MF thickness with the soil water content (SWC), soil organic matter (SOM), total nitrogen (TN), available nitrogen (AN), total phosphorus (TP), and available phosphorus (AP; all p < 0.01), while the MF thickness was negatively correlated with the soil temperature (ST; p < 0.01). In addition, the community structure of the rhizosphere soil bacteria was significantly changed overall by the MF thickness, which also interfered with the function of the rhizosphere soil bacteria. The correlation analyses also showed that the abundance of Bradyrhizobium and Nitrospira was positively correlated with the MF thickness, while the abundance of Sphinsinomonas and Massilia was negatively correlated with it. This indicated that with the increase of the MF thickness, the ability of the rhizosphere soil to utilize N and remove harmful molecules was strengthened, while the capacity of the rhizosphere soil to degrade pollutants was greatly reduced. These findings provide additional insights into the potential risks of the application of different thicknesses of MFs, particularly concerning the PCPS and soil microbial communities.

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不同厚度地膜对云南红土烟草根瘤土壤微生物群落的影响
农田地膜(MF)管理模式会影响土壤的理化性质(PCPS)和微生物群落结构;然而,有关根瘤菌群落结构与地膜厚度之间关系的研究仍然有限。为了了解 MF 厚度、PCPS 和根圈微生物之间的相互作用,本研究采用综合元基因组策略,用云南红土中四种常用的具有代表性的 MF 厚度(0.004、0.006、0.008 和 0.010 mm)处理烟草根圈土壤。结果表明,与裸露田块(CK)相比,覆膜最厚的田块(0.010 毫米)的烟草株高(TPH)、叶片数(LN)、鲜叶重(FLW)和干叶重(DLW)等农艺性状均有显著改善(p < 0.01),其中鲜叶重(FLW)和干叶重(DLW)分别增加了 6.81% 和 5.54%。相关分析表明,MF 厚度与土壤含水量 (SWC)、土壤有机质 (SOM)、全氮 (TN)、可利用氮 (AN)、全磷 (TP) 和可利用磷 (AP) 呈显著正相关;而 MF 厚度与土壤温度 (ST) 呈负相关;p < 0.01。此外,根圈土壤细菌的群落结构在整体上受 MF 厚度的影响而发生了显著变化,这也干扰了根圈土壤细菌的功能。相关分析还表明,根瘤菌和硝化细菌的丰度与中层肥料厚度呈正相关,而鞘氨单胞菌和马西利亚菌的丰度与中层肥料厚度呈负相关。这表明,随着中层肥料厚度的增加,根圈土壤利用氮和去除有害分子的能力增强,而根圈土壤降解污染物的能力则大大降低。这些研究结果为了解施用不同厚度的 MFs 的潜在风险,特别是与 PCPS 和土壤微生物群落有关的风险,提供了更多的启示。
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来源期刊
CiteScore
7.70
自引率
9.60%
发文量
4837
审稿时长
14 weeks
期刊介绍: Frontiers in Microbiology is a leading journal in its field, publishing rigorously peer-reviewed research across the entire spectrum of microbiology. Field Chief Editor Martin G. Klotz at Washington State University is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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